Construction of an antibacterial low-defect hybrid layer by facile PEI electrostatic assembly promotes dentin bonding
YUQING LEI
1, 2
,
Jiajia Xu
1, 2
,
Mengqi Pan
1, 2
,
YADONG CHEN
1, 2
,
Xiaojun Li
1, 2
,
Wei Zhu
3
,
Shu Chang
1, 2
,
Tianxiang Fang
3
,
Hongbing Liao
4
,
Qiaojie Luo
1, 2
,
Xiaodong Li
1, 2
Publication type: Journal Article
Publication date: 2023-01-01
scimago Q1
wos Q2
SJR: 1.159
CiteScore: 10.4
Impact factor: 5.7
ISSN: 20507518, 2050750X
PubMed ID:
36412982
General Chemistry
General Medicine
General Materials Science
Biomedical Engineering
Abstract
Dentin bonding is the most common form of human tissue repair among tissue-biomaterial adhesions, concerning billions of people's oral health worldwide. However, insufficient adhesive infiltration in the demineralized dentin matrix (DDM) always produces numerous defects in the bonding interface termed the hybrid layer, which causes high levels of bacteria-related secondary dental diseases, and less than 50% of the bonding lasts more than 5 years. Therefore, it is urgent and vital to construct an antibacterial low-defect hybrid layer to solve the durability-related problems. A DDM with a hydrogel-like surface formed by the hydration of highly-anionic non-collagenous proteins (NCPs) is firstly used as a template to electrostatically assemble polyethyleneimine (PEI). The formation of a stable antibacterial polyelectrolyte complex of PEI/NCPs rapidly eliminates NCP hydration capacity and significantly improves the infiltration of various adhesives. Simultaneously, both the PEI during the assembly and the PEI-assembled DDM can directly destroy a biofilm of S. Mutans on the DDM. Consequently, a long-term antibacterial and low-defect hybrid layer is successfully created, which greatly improves the bonding effectiveness. This helps to improve the clinical treatment of bacteria-based dental diseases and the tooth-restoration repair effect and prevent secondary dental diseases, having significance in clinical dentistry and providing insights for other tissue-biomaterial adhesions.
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Total citations:
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Citations from 2025:
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LEI Y. et al. Construction of an antibacterial low-defect hybrid layer by facile PEI electrostatic assembly promotes dentin bonding // Journal of Materials Chemistry B. 2023. Vol. 11. No. 2. pp. 335-344.
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LEI Y., Xu J., Pan M., CHEN Y., Li X., Zhu W., Shu Chang, Fang T., Liao H., Luo Q., Li X. Construction of an antibacterial low-defect hybrid layer by facile PEI electrostatic assembly promotes dentin bonding // Journal of Materials Chemistry B. 2023. Vol. 11. No. 2. pp. 335-344.
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RIS
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TY - JOUR
DO - 10.1039/d2tb01683d
UR - https://xlink.rsc.org/?DOI=D2TB01683D
TI - Construction of an antibacterial low-defect hybrid layer by facile PEI electrostatic assembly promotes dentin bonding
T2 - Journal of Materials Chemistry B
AU - LEI, YUQING
AU - Xu, Jiajia
AU - Pan, Mengqi
AU - CHEN, YADONG
AU - Li, Xiaojun
AU - Zhu, Wei
AU - Shu Chang
AU - Fang, Tianxiang
AU - Liao, Hongbing
AU - Luo, Qiaojie
AU - Li, Xiaodong
PY - 2023
DA - 2023/01/01
PB - Royal Society of Chemistry (RSC)
SP - 335-344
IS - 2
VL - 11
PMID - 36412982
SN - 2050-7518
SN - 2050-750X
ER -
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BibTex (up to 50 authors)
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@article{2023_LEI,
author = {YUQING LEI and Jiajia Xu and Mengqi Pan and YADONG CHEN and Xiaojun Li and Wei Zhu and Shu Chang and Tianxiang Fang and Hongbing Liao and Qiaojie Luo and Xiaodong Li},
title = {Construction of an antibacterial low-defect hybrid layer by facile PEI electrostatic assembly promotes dentin bonding},
journal = {Journal of Materials Chemistry B},
year = {2023},
volume = {11},
publisher = {Royal Society of Chemistry (RSC)},
month = {jan},
url = {https://xlink.rsc.org/?DOI=D2TB01683D},
number = {2},
pages = {335--344},
doi = {10.1039/d2tb01683d}
}
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LEI, YUQING, et al. “Construction of an antibacterial low-defect hybrid layer by facile PEI electrostatic assembly promotes dentin bonding.” Journal of Materials Chemistry B, vol. 11, no. 2, Jan. 2023, pp. 335-344. https://xlink.rsc.org/?DOI=D2TB01683D.